[1] HASEROTH H, KUGLER H, LANGBEIN K, et al. Review of Scientific Instruments, 1998, 69(2): 1051. doi:  10.1063/1.1148630
[2] FOURNIER P, GREGOIRE G, KUGLER H, et al. Review of Scientific Instruments, 2000, 71(2): 924. doi:  10.1063/1.1150347
[3] SHARKOV B Y, KONDRASHEV S, ROUDSKOY I, et al. LReview of Scientific Instruments, 1998, 69(2): 1035. doi:  10.1063/1.1148531
[4] IKEDA S, OKAMURA M, KANESUE T, et al. Review of Scientific Instruments, 2020, 91(2): 023304. doi:  10.1063/1.5128421
[5] ZHAO H, ZHANG J, JIN Q, et al. Review of Scientific Instruments, 2016, 87(2): 02A917. doi:  10.1063/1.4937115
[6] 谢修璀. 医用重离子加速器HIMM注入方案的设计研究 [D]. 兰州: 中国科学院研究生院(近代物理研究所), 2014.

XIE Xiucui. Design Study of Injection Scheme for Medical Heavy Ion Accelerator HIMM [D]. Lanzhou: Graduate University of Chinese Academy of Sciences (Institute of Modern Physics, Chinese Academy of Sciences), 2014. (in Chinese)
[7] MARTI F. Heavy Ion Strippers [C]//LINAC2012, Seoul, South Korea, Geneva: JACoW Publishing, 2012.
[8] NOLEN J A, MARTI F. Reviews of Accelerator Science and Technology, 2013, 6: 221. doi:  10.1142/S1793626813300107
[9] IWATA Y, YAMADA S, MURAKAMI T, et al. Nucl Instr and Meth A, 2006, 569(3): 685. doi:  10.1016/j.nima.2006.09.057
[10] WANG B, HAO H, VOROZHTSOV S, et al. Physics of Particles and Nuclei Letters, 2012, 9(3): 288. doi:  10.1134/S1547477112030053
[11] SCHLITT B. Commissioning and Operation of the Injector linacs for HIT and CNAO [C]. Proc LINAC08, 2008: 720.
[12] IWATA Y, YAMADA S, MURAKAMI T, et al. Nucl Instr and Meth A, 2007, 572(3): 1007. doi:  10.1016/j.nima.2007.01.012
[13] VORMANN H, SCHLITT B, CLEMENTE G, et al. Status of the Linac Components for the Italian Hadrontherapy Centre CNAO [C]//2012EPAC08, Genoa, Italy. 2008.
[14] BING, WANG, HUANFENG, et al. Physics of Particles & Nuclei Letters, 2012, 9:471.
[15] SAKO T, YAMAGUCHI A, SATO K, et al. Review of Scientific Instruments, 2016, 87(2): 02C109. doi:  10.1063/1.4935975
[16] 张博. 基于激光离子源的紧凑型注入器的实验研究及其DTL设计 [D]. 兰州: 中国科学院大学(中国科学院近代物理研究所), 2022.

ZHANG Bo. Experimental Study of Compact Injector Based on Laser Ion Source and ITs DTL Design [D]. Lanzhou: University of Chinese Academy of Sciences (Institute of Modern Physics, Chinese Academy of Sciences). 2022. (in Chinese)
[17] RATZINGER U, TIEDE R. S. Nucl Instr and Meth A, 1998, 415(1-2): 229. doi:  10.1016/S0168-9002(98)00389-1
[18] RATZINGER U. Effiziente Hochfrequenz-Linearbeschleuniger für leichte und schwere Ionen [D]. Frankfurt: Goethe University Frankfurt, 1998.
[19] RATZINGER U, HÄHNEL H, TIEDE R, et al. Physical Review Accelerators and Beams, 2019, 22(11): 114801. doi:  10.1103/PhysRevAccelBeams.22.114801
[20] BLEWETT M H. Physics Today, 1956, 9(11): 18. doi:  10.1063/1.3059815
[21] RATZINGER U. H-type linac structures [M]. Geneva: Cern Accelerator School, 2005.
[22] GOOD M L. Physical Review, 1952, 85(4): 556.
[23] TIEDE R, SAUER A C, PODLECH H, et al. LORASR code development [C]// Proceedings of EPAC 2006, Edinburgh, Scotland. 2006: WEPCH118.
[24] 杜衡, 原有进, 殷学军, 等. 原子核物理评论, 2018, 35(1): 34. doi:  10.11804/NuclPhysRev.35.01.034

DU Heng, YUAN Youjin, YIN Xuejun, et al. Nuclear Physics Review, 2018, 35(1): 34. (in Chinese) doi:  10.11804/NuclPhysRev.35.01.034
[25] BORBURGH J. 3-Dimensional finite element calculations on septum magnets with opera3d [R]. Geneva: CERN-PS Division, 1997.
[26] DUPERRIER R, PICHOFF N, URIOT D. CEA Saclay Codes Review for High Intensities Linacs Computations [M]. Berlin Heidelberg: Springer, 2002.
[27] TANG R, XING Q, ZHENG S, et al. Nucl Instr and Meth A, 2019, 920: 50. doi:  10.1016/j.nima.2018.10.125